Sic.Framework-Nanjing-Baishi/MECF.Framework.RT.Equipment.../Unit/IoPressureMeter3.cs

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C#
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using System.Xml;
using Aitex.Core.Common.DeviceData;
using Aitex.Core.RT.DataCenter;
using Aitex.Core.RT.Event;
using Aitex.Core.RT.IOCore;
using Aitex.Core.RT.SCCore;
using Aitex.Core.RT.Tolerance;
using Aitex.Core.Util;
using MECF.Framework.Common.Event;
namespace Aitex.Core.RT.Device.Unit
{
public class IoPressureMeter3 : BaseDevice, IDevice, IPressureMeter
{
public double Value
{
get
{
return _isFloatAioType ? _aiValue.Value : _aiValue.Value;
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}
}
public double FeedBack
{
get
{
return _isFloatAioType ? _aiValue.Value : _aiValue.Value;
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}
}
public double Precision
{
get
{
return _scPrecision == null ? 1500 : _scPrecision.DoubleValue;
}
}
private AITPressureMeterData DeviceData
{
get
{
AITPressureMeterData data = new AITPressureMeterData()
{
DeviceName = Name,
DeviceSchematicId = DeviceID,
DisplayName = Display,
FeedBack = Value,
Unit = Unit,
FormatString = _formatString,
DisplayWithUnit = true,
IsError = IsError,
IsWarning = IsWarning,
Precision = Precision,
};
return data;
}
}
public bool IsWarning
{
get
{
return _checkWarning.Result;
}
}
public bool IsError
{
get
{
return _checkAlarm.Result;
}
}
public double MinPressure
{
get
{
return _scMinValue == null ? 0 : _scMinValue.DoubleValue;
}
}
public double MaxPressure
{
get
{
return _scMaxValue == null ? 0 : _scMaxValue.DoubleValue;
}
}
public int WarningTime
{
get
{
return _scWarningTime == null ? 0 : _scWarningTime.IntValue;
}
}
public int AlarmTime
{
get
{
return _scAlarmTime == null ? 0 : _scAlarmTime.IntValue;
}
}
public bool EnableAlarm
{
get
{
return _scEnableAlarm == null ? true : _scEnableAlarm.BoolValue;
}
}
public bool IsOutOfRange
{
get
{
if (MinPressure < 0.01 && MaxPressure < 0.01)
return false;
return (Value < MinPressure) || (Value > MaxPressure);
}
}
private AIAccessor _aiValue = null;
private string _formatString = "F5";
private SCConfigItem _scMinValue;
private SCConfigItem _scMaxValue;
private SCConfigItem _scEnableAlarm;
private SCConfigItem _scWarningTime;
private SCConfigItem _scAlarmTime;
private SCConfigItem _scPrecision;
private ToleranceChecker _checkWarning = new ToleranceChecker();
private ToleranceChecker _checkAlarm = new ToleranceChecker();
public AlarmEventItem AlarmToleranceWarning { get; set; }
public AlarmEventItem AlarmToleranceError { get; set; }
private bool _isFloatAioType = false;
public IoPressureMeter3(string module, XmlElement node, string ioModule = "")
{
var attrModule = node.GetAttribute("module");
base.Module = string.IsNullOrEmpty(attrModule) ? module : attrModule;
Name = node.GetAttribute("id");
Display = node.GetAttribute("display");
DeviceID = node.GetAttribute("schematicId");
Unit = node.GetAttribute("unit");
_isFloatAioType = !string.IsNullOrEmpty(node.GetAttribute("aioType")) && (node.GetAttribute("aioType") == "float");
_aiValue = ParseAiNode("aiValue", node, ioModule);
if (node.HasAttribute("formatString"))
_formatString = string.IsNullOrEmpty(node.GetAttribute("formatString")) ? "F5" : node.GetAttribute("formatString");
string scBasePath = node.GetAttribute("scBasePath");
if (string.IsNullOrEmpty(scBasePath))
scBasePath = $"{Module}.{Name}";
else
{
scBasePath = scBasePath.Replace("{module}", Module);
}
_scMinValue = ParseScNode("", node, "", $"{scBasePath}.{Name}.MinValue");
_scMaxValue = ParseScNode("", node, "", $"{scBasePath}.{Name}.MaxValue");
_scEnableAlarm = ParseScNode("", node, "", $"{scBasePath}.{Name}.EnableAlarm");
_scWarningTime = ParseScNode("", node, "", $"{scBasePath}.{Name}.WarningTime");
_scAlarmTime = ParseScNode("", node, "", $"{scBasePath}.{Name}.AlarmTime");
_scPrecision = ParseScNode("", node, "", $"{scBasePath}.{Name}.Precision");
}
public bool Initialize()
{
DATA.Subscribe($"{Module}.{Name}.Value", () => Value);
DATA.Subscribe($"{Module}.{Name}.DeviceData", () => DeviceData);
AlarmToleranceWarning = SubscribeAlarm($"{Module}.{Name}.OutOfToleranceWarning", "", ResetWarningChecker, EventLevel.Warning);
AlarmToleranceError = SubscribeAlarm($"{Module}.{Name}.OutOfToleranceError", "", ResetErrorChecker);
return true;
}
public void Terminate()
{
}
public void Monitor()
{
if (EnableAlarm && (WarningTime > 0))
{
_checkWarning.Monitor(Value, MinPressure, MaxPressure, WarningTime);
if (_checkWarning.Trig)
{
AlarmToleranceWarning.Description =
$"{Display} out of range [{MinPressure},{MaxPressure}]{Unit} for {WarningTime} seconds";
AlarmToleranceWarning.Set();
}
if (!_checkWarning.Result)
{
AlarmToleranceWarning.Reset();
}
}
else
{
AlarmToleranceWarning.Reset();
}
if (EnableAlarm && (AlarmTime > 0))
{
_checkAlarm.Monitor(Value, MinPressure, MaxPressure, AlarmTime);
if (_checkAlarm.Trig)
{
AlarmToleranceError.Description =
$"{Display} out of range [{MinPressure},{MaxPressure}]{Unit} for {AlarmTime} seconds";
AlarmToleranceError.Set();
}
if (!_checkAlarm.Result)
{
AlarmToleranceError.Reset();
}
}
else
{
AlarmToleranceError.Reset();
}
}
public bool ResetWarningChecker()
{
_checkWarning.RST = true;
return true;
}
public bool ResetErrorChecker()
{
_checkAlarm.RST = true;
return true;
}
public void Reset()
{
AlarmToleranceWarning.Reset();
AlarmToleranceError.Reset();
}
}
}